Focusing property simulation of tapered-cladding single-mode hemispherical fiber micro-lenses

Xiaoguang Gao, Shuping Li, Jingping Zhu, Yuzhou Sun, T. Tang
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Abstract

The properties of tapered-cladding single-mode hemispherical fiber micro-lenses whose radius is larger than twice of the core radius of the fiber are investigated by Monte Carlo simulation. The radial field distribution of the fiber is expressed as a Gaussian distribution. Simulation results show that the least confusion spots and the maximum axial intensity spots are not located at the focal plane of the hemispherical micro-lenses. The influence of the spherical aberration of the lenses on the spot size can not be neglected for micro-lenses with small curvature radius, and the Gaussian beam model typically used in the calculation of fiber micro-lenses is valid only when the radius of the refractive surface is larger than triple of the fiber core radius.
锥形包层单模半球面光纤微透镜聚焦特性仿真
采用蒙特卡罗模拟方法研究了半径大于光纤芯半径两倍的锥形包层单模半球形光纤微透镜的性能。光纤的径向场分布表示为高斯分布。仿真结果表明,半球面微透镜的焦平面上不存在最小混淆斑和最大轴向强度斑。对于曲率半径较小的微透镜,透镜的球差对光斑尺寸的影响不容忽视,通常用于光纤微透镜计算的高斯光束模型只有在折射率面半径大于光纤芯半径的三倍时才有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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